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  • 學位論文

酵母菌 Pichia pastoris 中表現重組水稻蔗糖合成酶 RSuS3 之性質與結構探討

Studies on the Biochemical and Structural Characteristics of Recombinant Rice Sucrose Synthase RSuS3 in Pichia pastoris

指導教授 : 王愛玉
共同指導教授 : 宋賢一 楊啟伸
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摘要


蔗糖合成酶催化將蔗糖及UDP轉換為果糖及UDPG的可逆反應。水稻中發現三種RSus異構基因,RSus1及RSus2在水稻各組織中均有表現,而RSus3的表現具有穀實專一性。本論文以Pichia pastoris表現之重組RSuS3,探討其酵素性質與結構。 將建構於酵母菌P. pastoris中的RSus3 cDNA表現產物進行純化,加以分析。重組RSuS3僅在合成蔗糖方向具有較高的活性,分解蔗糖方向的活性極低。Mg2+可促進合成蔗糖方向的活性。醣中間代謝物對重組RSuS3活性的影響並不顯著,而磷脂質的存在與否對其活性也無明顯影響。 重組RSuS3蛋白質表面具有8個cysteine,並以電子顯微鏡觀察到原態蛋白質呈現四元體的形態。此外,已得到重組RSuS3蛋白質結晶及重原子共結晶,並收集原態蛋白質結晶之繞射數據,其解析度達3.53 Å,是蛋白質進行結晶繞射的初步成果。

並列摘要


Sucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UDPG. Among the three isogenes in rice (RSus1, RSus2, RSus3), the gene products of RSus1 and RSus2 are ubiquitously present in all rice tissues, while the expression of RSus3 is seed-specific. In this research, recombinant RSuS3 expressed from Pichia pastoris is used to study on the biological and structural characteristics of RSuS3. Expression plasmid containing RSus3 cDNA transformed into yeast P. pastoris for expression, and the recombinant product is purified to analyze its properties. The results show that the major activity of recombinant RSuS3 is to generate sucrose from fructose and UDPG, while the sucrose-cleavage activity of RSuS3 is very low. Besides, Mg2+ is able to promote the sucrose-synthesis activity of RSuS3. The presence of sugar metabolites have no significant effect on recombinant RSuS3 activity, neither do the presence of phospholipids. There are eight cysteines on the surface of recombinant RSuS3, and the native protein is present as a tetramer as revealed from the result of transmission electron microscopy (TEM). Furthermore, native crystal, heavy atom co-crystal and diffraction data of native crystal at 3.53 Å resolution has been obtained as the initial results of first step of X-ray crystallography.

並列關鍵字

Sucrose synthase SuS Pichia pastoris

參考文獻


Tsai, Z.C. and Wang, A.Y. (2003) Identification od rice manganese-dependent protein kinases that phosphorylate sucrose synthase at multiple serine residues. Botanical Bulletin of Academia Sinica 44, 141-150.
Amor, Y., Haigler, C.H., Johnson, S., Wainescott, M. and Delmer, D.P. (1995) A membrane-associated form of sucrose synthase and its potential role in synthesis of cellulose and callose in plants. Proceedings of the National Academy of Sciences of the United States of America 92, 9353-9357.
Anguenot, R., Yelle, S. and Nguyen-Quoc, B. (1999) Purification of tomato sucrose synthase phosphorylated isoforms by Fe(III)-immobilized metal affinity chromatography. Archives of Biochemistry and Biophysics 365, 163-169.
Baroja-Fernandez, E., Munoz, F.J., Saikusa, T., Rodriguez-Lopez, M., Akazawa, T. and Pozueta-Romero, J. (2003) Sucrose synthase catalyzes the de novo production of ADPglucose linked to starch biosynthesis in heterotrophic tissues of plants. Plant and Cell Physiology 44, 500-509.
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被引用紀錄


黃玉嬌(2015)。水稻蔗糖合成酶催化反應機制與蛋白質結構之探討〔博士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2015.00909
相爾傑(2012)。水稻蔗糖合成酶中 E-X7-E motif 之功能探討〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2012.10712
蔡青霖(2007)。酵母菌 Pichia pastoris 中表現之重組水稻蔗糖合成酶 RSuS1 及 RSuS3 之性質探討〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2007.10580
黃卓萱(2007)。水稻蔗糖合成酶RSuS3突變株之分析與結構性質探討〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2007.10230

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